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Synthesis of CaF2 Nanoparticles Coated by SiO2 for Improved Al2O3/TiC Self-Lubricating Ceramic Composites

机译:SiO2包覆的CaF2纳米粒子的合成及改进的Al2O3 / TiC自润滑陶瓷复合材料

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摘要

In order to reduce the influence of CaF addition on the mechanical properties of self-lubricating ceramic tools, we applied a silicon dioxide (SiO ) coating on calcium fluoride (CaF ) nanoparticles through hydrolysis and condensation reactions using the tetraethoxysilane (TEOS) method. The powder was dried by the azeotropic method, so that it acquired a better dispersibility. The resulting composite powders were characterized using XRD (X-ray diffraction) and TEM (transmission electron microscopy), showing that the surface of CaF was coated with a layer of uniform and compact SiO . SiO shells with different thicknesses could be obtained by changing the amount of TEOS added, and the thickness of the SiO shells could be controlled between 1.5 and 15 nm. At the same time, a ceramic material containing CaF nanoparticles and CaF @SiO -coated nanoparticles was prepared. It had the best mechanical properties when CaF @SiO -coated nanoparticles were added; its flexural strength, fracture toughness, and hardness were 562 ± 28 MPa, 5.51 ± 0.26 MPa·m , and 15.26 ± 0.16 GPa, respectively. Compared with the ceramic tool containing CaF nanoparticles, these mechanical properties were increased by 17.57%, 12.67%, and 4.88%, respectively. The addition of CaF @SiO -coated nanoparticles greatly improved the antifriction and wear resistance of the ceramic material, and the antifriction and wear resistance were balanced.
机译:为了减少添加CaF对自润滑陶瓷工具的机械性能的影响,我们使用四乙氧基硅烷(TEOS)方法通过水解和缩合反应在氟化钙(CaF)纳米颗粒上涂覆了二氧化硅(SiO)涂层。通过共沸法将粉末干燥,从而获得更好的分散性。使用XRD(X射线衍射)和TEM(透射电子显微镜)对所得复合粉末进行表征,表明CaF的表面覆盖有均匀且致密的SiO层。通过改变TEOS的添加量,可以获得具有不同厚度的SiO壳,并且可以将SiO壳的厚度控制在1.5至15nm之间。同时,制备了包含CaF纳米颗粒和CaF @ SiO包覆的纳米颗粒的陶瓷材料。当添加CaF @SiO涂层的纳米粒子时,它具有最佳的机械性能。其弯曲强度,断裂韧性和硬度分别为562±28MPa,5.51±0.26MPa·m和15.26±0.16GPa。与包含CaF纳米颗粒的陶瓷工具相比,这些机械性能分别提高了17.57%,12.67%和4.88%。 CaF @SiO包覆的纳米颗粒的加入极大地改善了陶瓷材料的减摩和耐磨性,并且减摩和耐磨性达到平衡。

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